Computational Nanosatellite Constellations

IF 0.7 Q4 TELECOMMUNICATIONS
Brandon Lucia, Bradley Denby, Zachary Manchester, H. Desai, E. Ruppel, A. Colin
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引用次数: 7

Abstract

As rocket launch cadences increase, access to space rises dramatically - setting the stage for the next space industry surge. New, smaller, and less expensive satellites - now "nanosatellites" - can be deployed en masse to form constellations of hundreds, thousands, or even tens of thousands of devices [27, 40, 41, 16, 17, 18, 43]. A constellation of nanosatellites equipped with sensors (e.g., visual or hyperspectral cameras, particle detectors, or magnetometers) and radios provides a first-time opportunity for orbital swarm sensing to synthesize data from the unique vantage point of low-Earth orbit (LEO).
计算纳米卫星星座
随着火箭发射频率的增加,进入太空的机会急剧增加,为下一次太空工业的激增奠定了基础。新的、更小、更便宜的卫星——现在的“纳米卫星”——可以大规模部署,形成由数百、数千甚至数万个设备组成的星座[27,40,41,16,17,18,43]。配备传感器(如视觉或高光谱相机、粒子探测器或磁力计)和无线电的纳米卫星星座首次为轨道群传感提供了从低地球轨道(LEO)独特的有利位置合成数据的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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